Milan Giulia, Romanello Vanina, Pescatore Francesca, Armani Andrea, Paik Ji-Hye, Frasson Laura, Seydel Anke, Zhao Jinghui, Abraham Reimar, Goldberg Alfred L, Blaauw Bert, DePinho Ronald A, Sandri Marco
Venetian Institute of Molecular Medicine, via Orus 2, 35129 Padova, Italy.
1] Venetian Institute of Molecular Medicine, via Orus 2, 35129 Padova, Italy [2] Department of Biomedical Sciences, University of Padova, 35131 Padova, Italy.
Nat Commun. 2015 Apr 10;6:6670. doi: 10.1038/ncomms7670.
Stresses like low nutrients, systemic inflammation, cancer or infections provoke a catabolic state characterized by enhanced muscle proteolysis and amino acid release to sustain liver gluconeogenesis and tissue protein synthesis. These conditions activate the family of Forkhead Box (Fox) O transcription factors. Here we report that muscle-specific deletion of FoxO members protects from muscle loss as a result of the role of FoxOs in the induction of autophagy-lysosome and ubiquitin-proteasome systems. Notably, in the setting of low nutrient signalling, we demonstrate that FoxOs are required for Akt activity but not for mTOR signalling. FoxOs control several stress-response pathways such as the unfolded protein response, ROS detoxification, DNA repair and translation. Finally, we identify FoxO-dependent ubiquitin ligases including MUSA1 and a previously uncharacterised ligase termed SMART (Specific of Muscle Atrophy and Regulated by Transcription). Our findings underscore the central function of FoxOs in coordinating a variety of stress-response genes during catabolic conditions.
低营养、全身炎症、癌症或感染等应激会引发一种分解代谢状态,其特征是肌肉蛋白水解增强和氨基酸释放,以维持肝脏糖异生和组织蛋白质合成。这些情况会激活叉头框(Fox)O转录因子家族。我们在此报告,肌肉特异性缺失FoxO成员可防止肌肉流失,这是因为FoxO在诱导自噬溶酶体和泛素蛋白酶体系统中发挥作用。值得注意的是,在低营养信号环境下,我们证明FoxO是Akt活性所必需的,但不是mTOR信号传导所必需的。FoxO控制多种应激反应途径,如未折叠蛋白反应、ROS解毒、DNA修复和翻译。最后,我们鉴定出了FoxO依赖性泛素连接酶,包括MUSA1和一种以前未被表征的连接酶,称为SMART(肌肉萎缩特异性且受转录调控)。我们的研究结果强调了FoxO在分解代谢条件下协调多种应激反应基因方面的核心功能。